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Control of Silver Diffusion in Low-Temperature Co-Fired Diopside Glass-Ceramic Microwave Dielectrics

机译:低温共烧透辉石玻璃陶瓷微波电介质中银扩散的控制

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摘要

Electrode material for low-temperature co-fired diopside glass-ceramic used for microwave dielectrics was investigated in the present work. Diffusion of silver from the electrode to diopside glass-ceramics degrades the performance of the microwave dielectrics. Two approaches were adopted to resolve the problem of silver diffusion. Firstly, silicon-oxide (SiO2) powder was employed and secondly crystalline phases were chosen to modify the sintering behavior and inhibit silver ions diffusion. Nanoscale amorphous SiO2 powder turns to the quartz phase uniformly in dielectric material during the sintering process, and prevents the silver from diffusion. The chosen crystalline phase mixing into the glass-ceramics enhances crystallinity of the material and inhibits silver diffusion as well. The result provides a method to decrease the diffusivity of silver ions by adding the appropriate amount of SiO2 and appropriate crystalline ceramics in diopside glass-ceramic dielectric materials. Finally, we used IEEE 802.11a 5.8 GHz as target specification to manufacture LTCC antenna and the results show that a good broadband antenna was made using CaMgSi2O6 with 4 wt % silicon oxide.
机译:在本工作中,研究了用于微波电介质的低温共烧透辉石微晶玻璃电极材料。银从电极到透辉石微晶玻璃的扩散会降低微波电介质的性能。采用了两种方法来解决银扩散的问题。首先,使用氧化硅(SiO2)粉末,其次选择结晶相以改变烧结行为并抑制银离子扩散。在烧结过程中,纳米级非晶态SiO2粉末在介电材料中均匀地转变为石英相,并防止银扩散。混合到玻璃陶瓷中的选定晶相可增强材料的结晶度,并同时抑制银的扩散。结果提供了通过在透辉石玻璃陶瓷介电材料中添加适量的SiO2和适当的结晶陶瓷来降低银离子扩散性的方法。最后,我们以IEEE 802.11a 5.8 GHz为目标规格来制造LTCC天线,结果表明,使用CaMgSi2O6和4 wt%的氧化硅制成了良好的宽带天线。

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